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Sensor-based control in eddy current separation of incinerator bottom ash

机译:焚烧炉底灰涡流分离中基于传感器的控制

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A sensor unit was placed online in the particle stream produced by an eddy current separator (ECS) to investigate its functionality in non-ferrous metals recovery. The targeted feed was the 1-6 mm size fraction bottom ash from a municipal waste incinerator. The sensor unit was attached to the ECS splitter, where it counted in real-time metal and mineral particles and accurately measured the grade of the stream in the metals product. Influence of segregation (e.g. due to particle size or density) on the metals concentrate were detected and studied using the sensor data collected at different splitter distances. Tests were performed in the laboratory and in a bottom ash processing plant with two different types of ECS and two sources of bottom ash with different moisture content. The measured metal grades matched the manual analyses with errors 0%, 1.5% and 3.1% for moist, dry and very wet feed, respectively. For very wet feed the ECS metals recovery dropped, which was observed from the strongly reduced particle counts and the large changes in cumulative particle properties. The measured sample proved representative for the whole metals concentrate if it is collected at a representative position within the metals particle trajectory fan produced by the ECS. ECS-performance proved sensitively dependent on splitter distance, since a 10 mm shift may result in 10% change in metal recovery and 18% change in grade. The main functionalities of the sensor unit are determined as online quality control and facilitation of automatic control over the ECS splitter distance. These functionalities translate in significant improvements in ECS metals recovery which in turn is linked to economic benefits, increased recycling rate of scrap metals and a further reduction of the ecological drawbacks of incinerator bottom ash.
机译:将传感器单元在线放置在由涡流分离器(ECS)产生的颗粒流中,以研究其在有色金属回收中的功能。目标进料是来自城市垃圾焚烧炉的1-6毫米大小的底灰。传感器单元连接到ECS分离器,在该分离器中对实时金属和矿物颗粒进行计数,并精确测量金属产品中料流的等级。使用在不同分流器距离处收集的传感器数据,检测并研究了偏析(例如,由于粒度或密度所致)对金属精矿的影响。在带有两种不同类型的ECS和两种含水量不同的底灰源的实验室和底灰加工厂中进行了测试。测得的金属品位与手工分析相符,潮湿,干燥和非常潮湿的进料的误差分别为0%,1.5%和3.1%。对于非常潮湿的进料,ECS金属的回收率下降,这是由于颗粒数量大大减少和累积颗粒性质发生了很大变化而观察到的。如果将样品收集在ECS生产的金属颗粒轨迹风扇内的代表性位置,则证明对整个金属精矿具有代表性。事实证明,ECS性能敏感地取决于分离器距离,因为偏移10 mm可能导致金属回收率变化10%,品位变化18%。传感器单元的主要功能被确定为在线质量控制和对ECS分离器距离的自动控制的促进。这些功能可显着改善ECS金属的回收率,进而提高经济效益,提高废金属的回收率,并进一步减少焚烧炉底灰的生态弊端。

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